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利用扫描电镜观察了不同退火工艺下钨钼系高速钢中碳化物的堆积状态,并用能谱仪分析了堆积处碳化物类型.结果表明,堆积处的碳化物类型为M6C;高速钢等温退火中的等温温度和保温时间选择不当是造成碳化物堆积的主要原因;对已产生碳化物堆积的钢材,可采用较低温度的二次退火工艺来消除碳化物堆积.

参考文献

[1] 郭耕三.高速钢及其热处理[M].北京:机械工业出版社,1985
[2] Leskovsek V;Ule B .Improved Vacuum Heat-Treatment for Fine-Blanking Tools From High-Speed Steel M2[J].Journal of Materials Processing Technology,1998,82:89.
[3] Bergman F;Hedenqvist P;Hogmark S .The Influence of Primary Carbides and Test Parameters on Abrasive and Erosive Wear of Selected PM High Speed Steels[J].Tribology International,1997,30(03):183.
[4] Shaikh Q A;Coleman D S;Bates J.Wear and Microstructural Studies of Alloy Sintered Steels[J].Journal of Materials Science and Technology,1991(07):728.
[5] Dunlop G L;Wang Rong.Development of Microstructure During Heat Treatment of High Speed Steels[A].Leoben:Klampfer Gmbh Weiz,1990:33.
[6] EI-Rakayby A M;Mills B .On the Microstructure and Mechanical Properties of High Speed Steels[J].Journal of Materials Science,1988,23:4340.
[7] Karagoz S;Fischmeister H F.The Relative Contribution of Primary Carbides and Secondary Hardening to the Performance of High Speed Steels[A].Leoben:Klampfer Gmbh Weiz,1990:41.
[8] EI-Rakayby A M;Mills B .The Role of Primary Carbides in the Wear of High Speed Steels[J].WEAR,1974,28:69.
[9] 许达,俞峰,罗迪.简讯:近期高速钢中存在的一些质量问题[J].中国冶金,2006(03):50.
[10] 秦茶,于旭光,吴立志,郎英翠,许昌玲,王红.碳化物堆积对钨钼系高速钢性能的影响[J].特殊钢,2008(03):21-23.
[11] 钢铁研究总院;大连钢厂.轧制及退火工艺对W9Mo3Cr4V高速钢淬火晶粒度及性能的影响[A].,1982:83.
[12] 约盖勒;周倜武.工具钢[M].北京:国防工业出版社,1983
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